ADM3311 AD [Analog Devices], ADM3311 Datasheet

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ADM3311

Manufacturer Part Number
ADM3311
Description
Manufacturer
AD [Analog Devices]
Datasheet

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a
*Protected by Patent No. 5,606,491.
Green Idle is a trademark of Analog Devices, Inc.
GENERAL DESCRIPTION
The ADM3311E is a three driver/five receiver product designed
to fully meet the EIA-232 standard while operating with a single
+2.7 V to +3.6 V power supply. The device features an on-board,
charge pump, dc-to-dc converter, eliminating the need for dual
power supplies. This dc-to-dc converter contains a voltage tri-
pler and voltage inverter, which internally generates positive and
negative supplies from the input +3 V power supply. The dc-
to-dc converter operates in Green Idle Mode, whereby the
charge pump oscillator is gated on and off to maintain the out-
put voltage at ± 7.25 V under varying load conditions. This
minimizes the power consumption and makes these products
ideal for battery powered portable devices.
The ADM3311E is suitable for operation in harsh electrical
environments and contains ESD protection up to ± 15 kV on all
I-O lines.
The ADM3311E contains three drivers and five receivers and
is intended for serial port applications on notebook/laptop
computers.
Serial Port Transceiver with Green Idle
15 kV ESD Protected, +2.7 V to +3.6 V
A shutdown facility is also provided that reduces the power
consumption to 3 µW. While in shutdown, one receiver remains
active, thereby allowing monitoring of peripheral devices. This
feature allows the device to be shut down until a peripheral device
begins communication. The active receiver can alert the processor,
which can then take the ADM3311E out of the shutdown
mode.
The ADM3311E is fabricated using CMOS technology for
minimal power consumption. It features a high level of over-
voltage protection and latch-up immunity.
The ADM3311E is packaged in a 28-lead SSOP/TSSOP
package.
ENABLE
V
CC
INPUT
OUTPUTS
1 F
CERAMIC
INPUTS*
CMOS
0.1 F
CMOS
NOTES:
*
**
INTERNAL 400k
INTERNAL 5k
FUNCTIONAL BLOCK DIAGRAM
R1
R2
R3
R4
R5
0.1 F
T1
T2
T3
OUT
OUT
OUT
OUT
OUT
0.1 F
IN
IN
IN
C2
C4
10
12
13
14
11
1
2
3
4
5
6
7
9
PULL-DOWN RESISTOR ON EACH RS-232 INPUT
8
PULL-UP RESISTOR ON EACH CMOS INPUT
V+
C2+
V
C2–
EN
C1+
CC
ADM3311E
T1
R1
+3V TO
INVERTER
VOLTAGE
TRIPLER/
R2
T2
0.1 F
C1
R3
ADM3311E*
9V
R4
T3
GND
C3–
C1–
C3+
R5
SD
V–
19
18
16
15
28
27
26
25
24
23
22
20
17
21
C3
0.1 F
T1
T2
T3
R1
R2
R3
R4
R5
SHUTDOWN
INPUT
C5
0.1 F
OUT
OUT
OUT
IN
IN
IN
IN
IN
EIA/TIA-232
INPUTS
EIA/TIA-232
OUTPUTS
**

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ADM3311 Summary of contents

Page 1

... This feature allows the device to be shut down until a peripheral device begins communication. The active receiver can alert the processor, which can then take the ADM3311E out of the shutdown mode. The ADM3311E is fabricated using CMOS technology for minimal power consumption ...

Page 2

... ADM3311E–SPECIFICATIONS Parameter Operating Voltage Range V Power Supply Current CC Shutdown Supply Current Input Pull-Up Current Input Leakage Current, SD, EN Input Logic Threshold Low, V INL Input Logic Threshold High, V INH CMOS Output Voltage Low CMOS Output Voltage High CMOS Output Leakage Current Charge Pump Output Voltage, V+ Charge Pump Output Voltage, V– ...

Page 3

... Normal Enabled Operation 0 1 Receivers Enabled Disabled 1 0 Shutdown Disabled 1 1 Shutdown Disabled Temperature Model Range ADM3311EARS-Reel 2.5 –40°C to +85°C ADM3311EARU-Reel 2.5 –40°C to +85°C PIN FUNCTION DESCRIPTIONS R 1– OUT OUT Enabled Enabled Disabled Disabled Disabled Enabled Disabled ...

Page 4

... ADM3311E –Typical Performance Characteristics 55022 CLASS B CONDUCTED QUASI-PEAK 100k 1M FREQUENCY – 55022 CLASS B RADIATED EMISSIONS dB V/m (EUT at 3m 100 120 FREQUENCY – MHz –1 –2 –3 – ...

Page 5

... Tek Stop 500kS Ch1 5.00V 2000 2500 Ω Tek Stop 500kS Ch1 5.00V 2500 ∞ ADM3311E 50 100 150 200 250 300 OSCILLATOR FREQUENCY – kHz 429 Acqs [ ] O/P HIGH T Ch2 5.00V M 100 s Ch1 0V ...

Page 6

... V using C5 as the storage element. However, it should be noted that, unlike other charge-pump dc- dc converters, the charge pump on the ADM3311E does not run open-loop. The output voltage is regulated to ± 7. the Green Idle circuit (as described later) and will never reach ...

Page 7

... Any radiated and conducted emissions will also vary accordingly. Like other Analog Devices RS-232 trans- ceiver products, the ADM3311E features slew rate limiting and other techniques to minimize radiated and conducted emissions. The device is characterized for EMC under all load conditions, and is well within the requirements of EN55022/CISPR22 ...

Page 8

... V/µs in order to minimize CC EMI interference. LAYOUT AND SUPPLY DECOUPLING Because of the high frequencies at which the ADM3311E oscil- lator operates, particular care should be taken with printed circuit board layout, with all traces being as short as possible and being connected as close to the device as possible. ...

Page 9

... TO 1ns The ADM3311E is tested using both of the above-mentioned test methods. All pins are tested with respect to all other pins as per the MIL-STD-883B specification. In addition, all I-O pins are tested as per the IEC test specification. The products were tested under the following conditions: (a) Power-On— ...

Page 10

... Degradation or loss of function that is not recoverable due to damage. The ADM3311E easily meets Classification 1 at the most strin- gent (Level 3) requirement. In fact, field strengths V/m showed no performance degradation and error-free data trans- mission continued even during irradiation. ...

Page 11

... It is therefore important that the switches in the charge pump guarantee break-before-make switching under all condi- tions so that instantaneous short circuit conditions do not occur. The ADM3311E has been designed to minimize the switching transients and ensure break-before-make switching thereby minimizing conducted emissions. This has resulted in the level of emissions being well below the limits required by the specifi- cation ...

Page 12

... The ADM3311E was operated at maximum baud rates and configured typical RS-232 interface. Testing for radiated emissions was carried out in a shielded anechoic chamber ...

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